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伏核壳部的α-芋螺毒素 MII 敏感型烟碱型乙酰胆碱受体调节尼古丁维持的递增比率反应。

Alpha-conotoxin MII-sensitive nicotinic acetylcholine receptors in the nucleus accumbens shell regulate progressive ratio responding maintained by nicotine.

机构信息

Department of Pharmacology and Toxicology, Virginia Commonwealth University, Richmond, VA 23298, USA.

出版信息

Neuropsychopharmacology. 2010 Feb;35(3):665-73. doi: 10.1038/npp.2009.171. Epub 2009 Nov 4.

Abstract

Beta2 subunit containing nicotinic acetylcholine receptors (beta2()nAChRs; asterisk (()) denotes assembly with other subunits) are critical for nicotine self-administration and nicotine-associated dopamine (DA) release that supports nicotine reinforcement. The alpha6 subunit assembles with beta2 on DA neurons where alpha6beta2()nAChRs regulate nicotine-stimulated DA release at neuron terminals. Using local infusion of alpha-conotoxin MII (alpha-CTX MII), an antagonist with selectivity for alpha6beta2()nAChRs, the purpose of these experiments was to determine if alpha6beta2()nAChRs in the nucleus accumbens (NAc) shell are required for motivation to self-administer nicotine. Long-Evans rats lever-pressed for 0.03 mg/kg, i.v., nicotine accompanied by light+tone cues (NIC) or for light+tone cues unaccompanied by nicotine (CUEonly). Following extensive training, animals were tested under a progressive ratio (PR) schedule that required an increasing number of lever presses for each nicotine infusion and/or cue delivery. Immediately before each PR session, rats received microinfusions of alpha-CTX MII (0, 1, 5, or 10 pmol per side) into the NAc shell or the overlying anterior cingulate cortex. alpha-CTX MII dose dependently decreased break points and number of infusions earned by NIC rats following infusion into the NAc shell but not the anterior cingulate cortex. Concentrations of alpha-CTX MII that were capable of attenuating nicotine self-administration did not disrupt locomotor activity. There was no effect of infusion on lever pressing in CUEonly animals and NAc infusion alpha-CTX MII did not affect locomotor activity in an open field. These data suggest that alpha6beta2()nAChRs in the NAc shell regulate motivational aspects of nicotine reinforcement but not nicotine-associated locomotor activation.

摘要

β2 亚基包含烟碱型乙酰胆碱受体(β2()nAChR;星号(())表示与其他亚基组装)对于尼古丁自我给药和支持尼古丁强化的尼古丁相关多巴胺 (DA) 释放至关重要。α6 亚基与 DA 神经元上的β2 组装,其中α6β2()nAChR 调节神经元末梢的尼古丁刺激的 DA 释放。使用局部输注α-芋螺毒素 MII(α-CTX MII),一种对α6β2()nAChR 具有选择性的拮抗剂,这些实验的目的是确定伏隔核(NAc)壳中的α6β2()nAChR 是否需要自我给药尼古丁的动机。长爪沙鼠通过按下杠杆获得 0.03mg/kg,iv,尼古丁伴随着光+音线索(NIC)或没有尼古丁的光+音线索(仅 CUE)。在广泛的训练之后,动物在递增比率(PR)方案下进行测试,该方案要求每次尼古丁输注和/或线索传递增加一定数量的杠杆按压。在每次 PR 会议之前,大鼠接受α-CTX MII(0、1、5 或 10pmol 每侧)到 NAc 壳或覆盖的前扣带皮层的微输注。α-CTX MII 剂量依赖性地降低了 NIC 大鼠在 NAc 壳内输注后突破点和获得的输注次数,但对前扣带皮层没有影响。能够减弱尼古丁自我给药的 α-CTX MII 浓度不会破坏运动活动。在仅 CUE 动物中,输注没有影响杠杆按压,并且 NAc 输注α-CTX MII 不会影响开放场中的运动活动。这些数据表明,NAc 壳中的α6β2()nAChR 调节尼古丁强化的动机方面,但不调节尼古丁相关的运动激活。

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